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Numerical analysis of the compressive and shear failure behavior of rock containing multi-intermittent joints

机译:含有多间歇关节岩石的压缩和剪切失效行为的数值分析

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The failure behavior of intermittent jointed rocks is dependent on joint configurations. Joint inclination angle and continuity factor determined the joint arrangement in a rectangular numerical sample that was established by using the particle flow code approach. To identify the differences in the failure processes of identical intermittent jointed samples, uniaxial compressive and shear loads were applied on each sample. The crack growth path presented the four typical crack coalescence patterns identified via compressive and shear numerical tests. The crack coalescence pattern was associated with joint slant angle and continuity factor. The observed crack coalescence patterns of every sample with the same inclination angle and continuity factor were partially identical under compressive and shear loading. The differences in the crack patterns of the compressive and shear failure processes were described and compared. Typical compressive and shear failure processes were illustrated. Four compressive and three shear failure modes were identified. The cracking location and number of cracks in each failure mode were different. Additionally, the contact force evolution among particles during shear and compressive loading was different and likely accounted for the differences in cracking patterns. Under compressive or shear loading, the contact force concentration in each sample underwent the following stages: uniform distribution before loading, concentrated distribution, and scattered distribution after failure. (C) 2018 Academie des sciences. Published by Elsevier Masson SAS. All rights reserved.
机译:间歇性接合岩石的故障行为取决于关节配置。联合倾斜角度和连续性因子确定通过使用粒子流量代码方法建立的矩形数值样本中的接头布置。为了鉴定相同的间歇性接合样品的失效过程的差异,在每个样品上施加单轴压缩和剪切载量。裂缝生长路径呈现通过压缩和剪切数值测试鉴定的四种典型的裂缝结合模式。裂缝结合图案与关节倾斜角度和连续性因子相关。在压缩和剪切负载下,具有相同倾斜角度和连续因子的每个样品的观察到的裂缝聚结图案在压缩和剪切负载下部分相同。描述并比较了压缩和剪切失效过程的裂纹模式的差异。说明了典型的压缩和剪切失效过程。鉴定了四种压缩和三种剪切衰竭模式。每个故障模式中的裂缝位置和裂缝数不同。另外,剪切和压缩负载期间的颗粒之间的接触力进化是不同的并且可能占裂化模式的差异。在压缩或剪切负载下,每个样品中的接触力浓度在下降后进行:在加载,浓缩分布和破坏后分散分布之前的均匀分布。 (c)2018年Academie Des Sciences。由Elsevier Masson SA出版。版权所有。

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